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猪链球菌Galα1-4Gal结合黏附素的寡糖-受体相互作用。结合位点结构及两种变异黏附素特异性的表征

Oligosaccharide-receptor interaction of the Gal alpha 1-4Gal binding adhesin of Streptococcus suis. Combining site architecture and characterization of two variant adhesin specificities.

作者信息

Haataja S, Tikkanen K, Nilsson U, Magnusson G, Karlsson K A, Finne J

机构信息

Department of Medical Biochemistry, University of Turku, Finland.

出版信息

J Biol Chem. 1994 Nov 4;269(44):27466-72.

PMID:7961660
Abstract

The sugar binding specificities of two groups of Streptococcus suis, a pig pathogen that causes meningitis also in man, were determined. Both the group represented by a recently characterized strain inhibitable by galactose and N-acetylgalactosamine (type PN) and the group inhibitable by galactose (type PO) were found by hemagglutination and solid-phase binding inhibition experiments to recognize the disaccharide Gal alpha 1-4Gal of the P1 and Pk blood group antigens. Both types preferred the disaccharide in terminal position. PN showed some, whereas PO showed almost no, binding to the globoside oligosaccharide containing an additional GalNAc beta 1-3 residue. The complete hydrogen bonding patterns were determined by using deoxy and other synthetic derivatives of the receptor disaccharide, and the constructed models of the interactions were compared with that of Escherichia coli PapG396 adhesin. The essential hydroxyls for binding were the HO-4', HO-6', HO-2, and HO-3 hydroxyls on the beta' alpha-side of the Gal alpha 1-4Gal molecule. Type PO adhesin also formed weak interactions with the hydroxyls HO-6 and HO-3'. The mechanism differed from that of E. coli, which binds to a cluster of five hydroxyls (HO-6, HO-2', HO-3', HO-4', and HO-6') and thus to a different part of the receptor disaccharide. These results represent the first example of the comparison of the saccharide receptor hydrogen bonding patterns of two bacterial organisms of different origin and show that the same saccharide may be recognized by two different binding mechanisms.

摘要

猪链球菌是一种可导致人类脑膜炎的猪病原体,对两组猪链球菌的糖结合特异性进行了测定。通过血凝试验和固相结合抑制试验发现,以最近鉴定的可被半乳糖和N - 乙酰半乳糖胺抑制的菌株为代表的组(PN型)以及可被半乳糖抑制的组(PO型),都能识别P1和Pk血型抗原的二糖Galα1 - 4Gal。两种类型都更倾向于末端位置的二糖。PN型与含有额外GalNAcβ1 - 3残基的球苷寡糖有一定结合,而PO型几乎没有结合。通过使用受体二糖的脱氧和其他合成衍生物确定了完整的氢键模式,并将构建的相互作用模型与大肠杆菌PapG396黏附素的模型进行了比较。结合所必需的羟基是Galα1 - 4Gal分子β'α侧的HO - 4'、HO - 6'、HO - 2和HO - 3羟基。PO型黏附素也与HO - 6和HO - 3'羟基形成弱相互作用。其机制与大肠杆菌不同,大肠杆菌与五个羟基簇(HO - 6、HO - 2'、HO - 3'、HO - 4'和HO - 6')结合,因此与受体二糖的不同部分结合。这些结果代表了对两种不同来源细菌生物体的糖受体氢键模式进行比较的首个实例,并表明相同的糖类可能通过两种不同的结合机制被识别。

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